A feeding tray for poultry
Patent Information
- Application Number
- CN202521479054.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-15
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-07-15
AI Technical Summary
[0005]为了克服在家禽饲养过程中,由于饲料盘的容量有限,需要人工定时定量进行投放,增加了工人劳动量,在雨天环境下,敞口的饲料盘中的饲料会浸泡在雨水中导致受潮污染,造成饲料的浪费,且在进食过程中,家禽相互间争抢容易导致饲料溢出,且家禽的踩踏也会使泥土或粪便进入到饲料盘中对饲料造成污染的问题
1、储料桶内的饲料在重力作用下经支撑底板上的开槽进入放料仓中进行投放,通过分料筒内部锥形匀料块的斜面结构防止饲料发生堆积,确保饲料能够均匀分散至导料槽内,当喂食盘中的饲料被家禽食用后,储存的饲料在重力的作用下通过导料槽在经过出料口自动进入到喂食盘中进行补充,供家禽进行食用;
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Figure CN224761061U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of poultry breeding technology, and in particular to a feeding tray for poultry. Background Technology
[0002] Poultry farming is an important part of agricultural production, mainly including the raising of poultry such as chickens, ducks, and geese, providing humans with products such as meat, eggs, and feathers. As a high-quality protein source, poultry products occupy an important position in the food supply. Poultry farming achieves efficient poultry production through scientific management, rationally selecting high-yield and disease-resistant breeds, and providing a balanced diet of protein, energy, vitamins, and minerals to meet the growth needs of poultry. Maintaining a suitable breeding environment with appropriate temperature, humidity, and ventilation ensures the healthy and rapid growth of poultry.
[0003] In current poultry farming practices, feed is mostly placed in open feed trays. Due to the limited capacity of the feed trays, manual feeding at regular intervals and in measured quantities is required, increasing the workload of workers. Since the open feed trays are directly exposed to the external environment, the feed will soak in rainwater on rainy days, leading to moisture and contamination and waste. Furthermore, during feeding, poultry fighting among themselves can easily cause feed to spill out, and trampling by poultry can also cause mud or feces to enter the feed trays and contaminate the feed.
[0004] Therefore, to address the issues mentioned above, such as the need for manual, timed, and quantitative feeding, the easy soaking of feed in rainy weather leading to moisture contamination, poultry fighting over feed causing spillage, and poultry trampling causing mud or feces contamination of the feed, a solution is proposed. This solution involves setting up a feed storage bin so that the feed inside is evenly distributed into the feeding tray by gravity through a cone-shaped feed distribution block, achieving automatic feeding. Dividing the feeding area into multiple feeding zones ensures orderly feeding. A supporting base plate provides protection for the feeding tray, and the height of the feeding tray is raised to effectively prevent rainwater contamination and poultry trampling. Utility Model Content
[0005] To overcome the problems in poultry farming, such as the limited capacity of feed trays requiring manual, timed, and quantitative feeding, which increases the workload of workers, the issue of feed in open feed trays becoming damp and contaminated in rainy weather, leading to feed waste, the problem of poultry fighting over feed during feeding causing feed to spill, and the problem of poultry trampling causing mud or feces to enter the feed trays and contaminate the feed.
[0006] The technical solution of this utility model is as follows: a feeding tray for poultry, including a supporting base plate, a supporting column welded and fixed to the bottom surface of the supporting base plate, an anti-slip pad connected and installed to the bottom surface of the supporting column, a storage bin welded and fixed to the center of the top surface of the supporting base plate, the storage bin and the supporting base plate being an integrated structure, a storage display groove opened on the side of the storage bin, and a feeding hopper welded and fixed to the top surface of the storage bin, the feeding hopper and the storage bin being an integrated structure; A feeding bin is welded and fixed at the center of the bottom surface of the supporting base plate. The feeding bin is connected to the storage tank. A distributing cylinder is welded and fixed to the bottom surface of the feeding bin. The distributing cylinder is connected to the feeding bin. A feeding tray is welded and fixed to the bottom surface of the distributing cylinder. The feeding tray is connected to the distributing cylinder. The top surface of the feeding tray is welded and fixed with a distributing base. The outer side of the distributing base is in contact with the inner wall of the distributing cylinder. A conical material equalizing block is provided on the top surface of the distributing base. The conical material equalizing block and the distributing base are an integrated structure. The material distribution base has a guide groove inside, which is distributed at equal angles on the material distribution base and passes through the material distribution base and the conical material equalization block. The feeding tray has a discharge port on the outside, which is distributed at equal angles on the side of the feeding tray and is connected to the guide groove.
[0007] Preferably, the support columns are distributed at equal angles on the bottom surface of the support base plate, and the top surface of the support base plate and the bottom surface of the storage bin are provided with slots. The support base plate and the storage bin are connected, and the storage bin and the feed hopper are connected.
[0008] Preferably, a dividing frame is welded and fixed to the top surface of the feeding tray, and the inner side of the dividing frame is welded and fixed to the outer surface of the bottom end of the feeding cylinder. An inlet is provided on the top surface of the dividing frame, and the inlets are distributed at equal angles on the top surface of the dividing frame.
[0009] Preferably, the top surface of the feeding hopper is provided with a feeding port, which is an integral structure with the feeding hopper. A threaded groove is provided on the outer side of the feeding port, and a sealing cap is connected to the outer side of the feeding port through the threaded groove.
[0010] The beneficial effects of this utility model are: 1. Under the action of gravity, the feed in the storage bin enters the feeding bin through the slot on the support base plate. The inclined structure of the conical feed distribution block inside the feed distribution cylinder prevents the feed from piling up and ensures that the feed can be evenly distributed into the feed guide trough. After the feed in the feeding tray is consumed by the poultry, the stored feed is automatically fed into the feeding tray through the feed guide trough and the discharge port under the action of gravity to replenish the feed for the poultry. 2. The feeding tray is divided into multiple feeding areas by the dividing frame, and the feeding openings are distributed at equal angles to enable poultry to eat in an orderly manner. The equal angle layout of the feed guide trough, combined with the feed outlet which is lower than the edge of the feeding tray, ensures that the feed will not spill out while the feed is evenly distributed in the feeding tray. 3. In rainy weather, a large support base can be used to shield the feeding tray at the bottom, preventing rainwater from entering the feed and contaminating it. By keeping the feeding tray at a certain height from the ground, rainwater can be prevented from splashing into the feeding tray, and the poultry can be prevented from trampling on the feeding tray and contaminating the feed without affecting their eating. Attached Figure Description
[0011] Figure 1 The diagram shown is a three-dimensional structural schematic of the present invention. Figure 2 The diagram shown is a three-dimensional structural diagram of the storage bin and sealing cap of this utility model. Figure 3 The diagram shown is a three-dimensional structural schematic of the feeding tray of this utility model; Figure 4 The diagram shown is a three-dimensional structural schematic of the cone-shaped uniform material block of this utility model; Figure 5 The diagram shown is a three-dimensional cross-sectional view of the material distribution base of this utility model.
[0012] Explanation of reference numerals in the attached drawings: 1. Support base plate; 2. Support column; 3. Anti-slip mat; 4. Storage bin; 5. Storage display slot; 6. Feeding bin; 101. Discharge bin; 102. Distributor cylinder; 103. Feeding tray; 104. Divider frame; 105. Feed inlet; 106. Distributor base; 107. Conical equalizing block; 108. Guide trough; 109. Discharge port; 601. Feeding port; 602. Threaded groove; 603. Sealing cover. Detailed Implementation
[0013] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0014] Please see Figures 1-5This utility model provides an embodiment: a feeding tray for poultry, including a supporting base plate 1, a supporting column 2 welded and fixed to the bottom surface of the supporting base plate 1, an anti-slip pad 3 connected and installed to the bottom surface of the supporting column 2, a storage bin 4 welded and fixed to the center of the top surface of the supporting base plate 1, the storage bin 4 and the supporting base plate 1 are an integrated structure, a storage display groove 5 is opened on the side of the storage bin 4, and a feeding hopper 6 is welded and fixed to the top surface of the storage bin 4, the feeding hopper 6 and the storage bin 4 are an integrated structure.
[0015] The support columns 2 are evenly distributed on the bottom surface of the support base plate 1. The top surface of the support base plate 1 and the bottom surface of the storage bin 4 are grooved. The support base plate 1 is connected to the storage bin 4, and the storage bin 4 is connected to the feed hopper 6. The support columns 2 and the anti-slip pads 3 provide stable support for the support base plate 1. The large area of the support base plate 1 covers the bottom feeding tray 103 to prevent rainwater from entering the feed and contaminating it. The feed can be stored in the storage bin 4. The remaining feed in the storage bin 4 can be directly observed through the storage display slot 5, which facilitates the replenishment of feed. The feed in the storage bin 4 enters the feed hopper 101 for feeding under the action of gravity through the groove on the support base plate 1.
[0016] A feed hopper 101 is welded and fixed at the center of the bottom surface of the supporting base plate 1. The feed hopper 101 is connected to the feed storage hopper 4. A feed distribution cylinder 102 is welded and fixed to the bottom surface of the feed hopper 101. The feed distribution cylinder 102 is connected to the feed hopper 101. A feeding tray 103 is welded and fixed to the bottom surface of the feed distribution cylinder 102. The feeding tray 103 is connected to the feed distribution cylinder 102. The feed in the feed hopper 101 is evenly distributed in the feed distribution cylinder 102 to ensure that the feed is evenly distributed in the feeding tray 103. By keeping the feeding tray 103 at a certain height from the ground, rainwater splashing from the ground can be prevented, and the feed can be prevented from being contaminated by the poultry stepping on the feeding tray 103 without affecting the poultry's feeding.
[0017] A partition frame 104 is welded and fixed to the top surface of the feeding tray 103. The inner side of the partition frame 104 is welded and fixed to the outer surface of the bottom end of the feed distribution cylinder 102. An inlet 105 is opened on the top surface of the partition frame 104. The inlets 105 are evenly distributed on the top surface of the partition frame 104. The partition frame 104 divides the feeding tray 103 into multiple feeding areas. The evenly distributed inlets 105 enable poultry to eat in an orderly manner. The evenly distributed feed trough 108, combined with the discharge port 109 which is lower than the edge of the feeding tray 103, ensures that the feed will not overflow while making the feed evenly distributed in the feeding tray 103.
[0018] Feeding tray 103 is welded and fixed to the top surface with a feed distribution base 106. The outer side of the feed distribution base 106 is in contact with the inner wall of the feed distribution cylinder 102. The top surface of the feed distribution base 106 is provided with a conical feed equalization block 107. The conical feed equalization block 107 and the feed distribution base 106 are an integrated structure. The inclined structure of the conical feed equalization block 107 inside the feed distribution cylinder 102 prevents feed from accumulating and ensures that the feed can be evenly distributed into the feed guide trough 108.
[0019] The feed distribution base 106 has a feed guide trough 108 inside, which is distributed at equal angles on the feed distribution base 106. The feed guide trough 108 passes through the feed distribution base 106 and the conical feed distribution block 107. The feed tray 103 has a discharge port 109 on its outer side, which is distributed at equal angles on the side of the feed tray 103. The discharge port 109 is connected to the feed guide trough 108. When the feed in the feed tray 103 is eaten by the poultry, the stored feed is automatically fed into the feed tray 103 through the feed guide trough 108 and the discharge port 109 under the action of gravity to replenish the feed for the poultry.
[0020] The top surface of the feeding hopper 6 is provided with a feeding port 601. The feeding port 601 and the feeding hopper 6 are integrated. A threaded groove 602 is provided on the outside of the feeding port 601. A sealing cover 603 is connected to the outside of the feeding port 601 through the threaded groove 602. Feed is added into the storage tank 4 through the feeding port 601 of the feeding hopper 6. The sealing cover 603 is tightened through the threaded groove 602 to prevent the feed in the storage tank 4 from being contaminated.
[0021] Working principle: According to Figures 1-2 As shown, during operation, the remaining amount of feed in the storage hopper 4 can be directly observed through the storage display slot 5, which makes it convenient to add feed to the storage hopper 4 through the feeding port 601 of the feeding bin 6. Then, the sealing cap 603 is tightened through the threaded groove 602 to prevent the feed in the storage hopper 4 from being contaminated. according to Figures 3-5 As shown, the feed in the storage bin 4 is fed into the feeding bin 101 through the slot on the support base plate 1 under the action of gravity. The inclined structure of the conical uniform feed block 107 inside the feed distribution cylinder 102 prevents the feed from piling up and ensures that the feed can be evenly distributed into the feed guide trough 108. After the feed in the feeding tray 103 is eaten by the poultry, the stored feed is automatically fed into the feeding tray 103 through the feed guide trough 108 and the discharge port 109 under the action of gravity for the poultry to eat. according to Figures 3-5 As shown, the feeding tray 103 is divided into multiple feeding areas by the dividing frame 104, and the poultry can eat in an orderly manner by the feeding ports 105 distributed at equal angles. The equal angle layout of the feed guide trough 108, combined with the feed outlet 109 which is lower than the edge of the feeding tray 103, ensures that the feed will not overflow while making the feed evenly distributed in the feeding tray 103. according to Figure 1 and Figure 3 As shown, in rainy weather, the large support base plate 1 covers the bottom feeding tray 103 to prevent rainwater from entering the feed and contaminating it. By keeping the feeding tray 103 at a certain height from the ground, rainwater can be prevented from splashing into the feeding tray 103, and the poultry can be prevented from trampling on the feeding tray 103 and contaminating the feed without affecting their eating.
[0022] The above is the entire working process of the device, and all contents not described in detail in this specification are existing technologies known to those skilled in the art.
[0023] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A feeding tray for poultry, comprising a supporting base plate (1), characterized in that: The bottom surface of the support base plate (1) is welded and fixed with a support column (2), and the bottom surface of the support column (2) is connected and installed with an anti-slip pad (3). The center of the top surface of the support base plate (1) is welded and fixed with a storage bucket (4). The storage bucket (4) and the support base plate (1) are an integrated structure. The side of the storage bucket (4) is provided with a storage display slot (5). The top surface of the storage bucket (4) is welded and fixed with a feeding bin (6). The feeding bin (6) and the storage bucket (4) are an integrated structure. A feeding bin (101) is welded and fixed at the center of the bottom surface of the supporting base plate (1). The feeding bin (101) is connected to the storage bin (4). A distributing cylinder (102) is welded and fixed at the bottom surface of the feeding bin (101). The distributing cylinder (102) is connected to the feeding bin (101). A feeding tray (103) is welded and fixed at the bottom surface of the distributing cylinder (102). The feeding tray (103) is connected to the distributing cylinder (102). The top surface of the feeding tray (103) is welded and fixed with a distributing base (106). The outer side of the distributing base (106) is in contact with the inner wall of the distributing cylinder (102). The top surface of the distributing base (106) is provided with a conical material equalizing block (107). The conical material equalizing block (107) and the distributing base (106) are an integrated structure. The material distribution base (106) has a material guide groove (108) inside. The material guide groove (108) is distributed at equal angles on the material distribution base (106). The material guide groove (108) passes through the material distribution base (106) and the conical material equalizing block (107). The feeding tray (103) has a discharge port (109) on its outer side. The discharge port (109) is distributed at equal angles on the side of the feeding tray (103). The discharge port (109) is connected to the material guide groove (108).
2. A feeding tray for poultry according to claim 1, characterized in that: The support columns (2) are distributed at equal angles on the bottom surface of the support base plate (1). The top surface of the support base plate (1) and the bottom surface of the storage barrel (4) are provided with slots. The support base plate (1) and the storage barrel (4) are connected. The storage barrel (4) and the feed bin (6) are connected.
3. A feeding tray for poultry according to claim 1, characterized in that: The top surface of the feeding tray (103) is welded and fixed with a partition frame (104). The inner side of the partition frame (104) is welded and fixed to the bottom outer surface of the feed cylinder (102). The top surface of the partition frame (104) is provided with a feeding port (105), which is distributed at equal angles on the top surface of the partition frame (104).
4. A feeding tray for poultry according to claim 1, characterized in that: The top surface of the feeding hopper (6) is provided with a feeding port (601). The feeding port (601) and the feeding hopper (6) are an integrated structure. A threaded groove (602) is provided on the outside of the feeding port (601). A sealing cover (603) is connected to the outside of the feeding port (601) through the threaded groove (602).